Photoreceptor progenitor dynamics in the zebrafish embryo retina and its modulation by primary cilia and N-cadherin

Aparicio Díaz, Hector Gonzalo - Rodao, Magela - Badano, José L. - Zolessi, Flavio R.

Resumen:

Photoreceptor cells of the vertebrate neural retina originate in the neuroepithelium, and like other neurons, must undergo cell body translocation and polarity transitions to acquire their final functional morphology, which includes features of neuronal and epithelial cells. We analyzed this process in detail in zebrafish embryos using in vivo confocal microscopy and electron microscopy. Photoreceptor progenitors were labeled by the transgenic expression of enhanced green fluorescent protein under the regulation of the photoreceptor-specific promoter crx, and structures of interest were disrupted using morpholino oligomers to knock-down specific genes. Photoreceptor progenitors detached from the basal retina at pre-mitotic stages, rapidly retracting a short basal process as the cell body translocated apically. They remained at an apical position indefinitely to form the outer nuclear layer (ONL), initially extending and retracting highly dynamic neurite-like processes, tangential to the apical surface. Many photoreceptor progenitors presented a short apical primary cilium. The number and length of these cilia was gradually reduced until nearly disappearing around 60 hpf. Their disruption by knocking-down ift88 and elipsa caused a notorious defect on basal process retraction. To assess the role of cell adhesion in the organization of photoreceptor progenitors, we knocked-down cdh2/N-cadherin and observed the cell behavior by time-lapse microscopy. The ectopic photoreceptor progenitors initially migrated in an apparent random manner, profusely extending cell processes, until they encountered other cells to establish cell rosettes in which they stayed, acquiring photoreceptor-like polarity. Altogether, our observations indicate a complex regulation of photoreceptor progenitor dynamics to form the retinal ONL, previous to the post-mitotic maturation stages.


Detalles Bibliográficos
2021
ANII: FCE_1_2014_1_4982
Neuroepithelium
Cell polarity
Cell adhesion
Retina lamination
Neurogenesis
Inglés
Universidad de la República
COLIBRI
https://hdl.handle.net/20.500.12008/38253
Acceso abierto
Licencia Creative Commons Atribución (CC - By 4.0)
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author Aparicio Díaz, Hector Gonzalo
author2 Rodao, Magela
Badano, José L.
Zolessi, Flavio R.
author2_role author
author
author
author_facet Aparicio Díaz, Hector Gonzalo
Rodao, Magela
Badano, José L.
Zolessi, Flavio R.
author_role author
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collection COLIBRI
dc.contributor.filiacion.none.fl_str_mv Aparicio Díaz Hector Gonzalo, Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Biología.
Rodao Magela, Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Biología.
Badano José L., Instituto Pasteur (Montevideo)
Zolessi Flavio R., Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Biología.
dc.creator.none.fl_str_mv Aparicio Díaz, Hector Gonzalo
Rodao, Magela
Badano, José L.
Zolessi, Flavio R.
dc.date.accessioned.none.fl_str_mv 2023-07-20T15:37:20Z
dc.date.available.none.fl_str_mv 2023-07-20T15:37:20Z
dc.date.issued.none.fl_str_mv 2021
dc.description.abstract.none.fl_txt_mv Photoreceptor cells of the vertebrate neural retina originate in the neuroepithelium, and like other neurons, must undergo cell body translocation and polarity transitions to acquire their final functional morphology, which includes features of neuronal and epithelial cells. We analyzed this process in detail in zebrafish embryos using in vivo confocal microscopy and electron microscopy. Photoreceptor progenitors were labeled by the transgenic expression of enhanced green fluorescent protein under the regulation of the photoreceptor-specific promoter crx, and structures of interest were disrupted using morpholino oligomers to knock-down specific genes. Photoreceptor progenitors detached from the basal retina at pre-mitotic stages, rapidly retracting a short basal process as the cell body translocated apically. They remained at an apical position indefinitely to form the outer nuclear layer (ONL), initially extending and retracting highly dynamic neurite-like processes, tangential to the apical surface. Many photoreceptor progenitors presented a short apical primary cilium. The number and length of these cilia was gradually reduced until nearly disappearing around 60 hpf. Their disruption by knocking-down ift88 and elipsa caused a notorious defect on basal process retraction. To assess the role of cell adhesion in the organization of photoreceptor progenitors, we knocked-down cdh2/N-cadherin and observed the cell behavior by time-lapse microscopy. The ectopic photoreceptor progenitors initially migrated in an apparent random manner, profusely extending cell processes, until they encountered other cells to establish cell rosettes in which they stayed, acquiring photoreceptor-like polarity. Altogether, our observations indicate a complex regulation of photoreceptor progenitor dynamics to form the retinal ONL, previous to the post-mitotic maturation stages.
dc.description.sponsorship.none.fl_txt_mv ANII: FCE_1_2014_1_4982
dc.format.extent.es.fl_str_mv 18 h
dc.format.mimetype.es.fl_str_mv application/pdf
dc.identifier.citation.es.fl_str_mv Aparicio Díaz, H, Rodao, M, Badano, J [y otro autor]. "Photoreceptor progenitor dynamics in the zebrafish embryo retina and its modulation by primary cilia and N-cadherin". International Journal of Developmental Biology. [en línea] 2021, 65: 439-455. 18 h. DOI: 10.1387/ijdb.200113fz
dc.identifier.doi.none.fl_str_mv 10.1387/ijdb.200113fz
dc.identifier.issn.none.fl_str_mv 1696-3547
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.12008/38253
dc.language.iso.none.fl_str_mv en
eng
dc.publisher.es.fl_str_mv Universidad del País Vasco
dc.relation.ispartof.es.fl_str_mv International Journal of Developmental Biology, 2021, 65: 439-455
dc.rights.license.none.fl_str_mv Licencia Creative Commons Atribución (CC - By 4.0)
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
dc.source.none.fl_str_mv reponame:COLIBRI
instname:Universidad de la República
instacron:Universidad de la República
dc.subject.es.fl_str_mv Neuroepithelium
Cell polarity
Cell adhesion
Retina lamination
Neurogenesis
dc.title.none.fl_str_mv Photoreceptor progenitor dynamics in the zebrafish embryo retina and its modulation by primary cilia and N-cadherin
dc.type.es.fl_str_mv Artículo
dc.type.none.fl_str_mv info:eu-repo/semantics/article
dc.type.version.none.fl_str_mv info:eu-repo/semantics/publishedVersion
description Photoreceptor cells of the vertebrate neural retina originate in the neuroepithelium, and like other neurons, must undergo cell body translocation and polarity transitions to acquire their final functional morphology, which includes features of neuronal and epithelial cells. We analyzed this process in detail in zebrafish embryos using in vivo confocal microscopy and electron microscopy. Photoreceptor progenitors were labeled by the transgenic expression of enhanced green fluorescent protein under the regulation of the photoreceptor-specific promoter crx, and structures of interest were disrupted using morpholino oligomers to knock-down specific genes. Photoreceptor progenitors detached from the basal retina at pre-mitotic stages, rapidly retracting a short basal process as the cell body translocated apically. They remained at an apical position indefinitely to form the outer nuclear layer (ONL), initially extending and retracting highly dynamic neurite-like processes, tangential to the apical surface. Many photoreceptor progenitors presented a short apical primary cilium. The number and length of these cilia was gradually reduced until nearly disappearing around 60 hpf. Their disruption by knocking-down ift88 and elipsa caused a notorious defect on basal process retraction. To assess the role of cell adhesion in the organization of photoreceptor progenitors, we knocked-down cdh2/N-cadherin and observed the cell behavior by time-lapse microscopy. The ectopic photoreceptor progenitors initially migrated in an apparent random manner, profusely extending cell processes, until they encountered other cells to establish cell rosettes in which they stayed, acquiring photoreceptor-like polarity. Altogether, our observations indicate a complex regulation of photoreceptor progenitor dynamics to form the retinal ONL, previous to the post-mitotic maturation stages.
eu_rights_str_mv openAccess
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identifier_str_mv Aparicio Díaz, H, Rodao, M, Badano, J [y otro autor]. "Photoreceptor progenitor dynamics in the zebrafish embryo retina and its modulation by primary cilia and N-cadherin". International Journal of Developmental Biology. [en línea] 2021, 65: 439-455. 18 h. DOI: 10.1387/ijdb.200113fz
1696-3547
10.1387/ijdb.200113fz
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institution Universidad de la República
instname_str Universidad de la República
language eng
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publishDate 2021
reponame_str COLIBRI
repository.mail.fl_str_mv mabel.seroubian@seciu.edu.uy
repository.name.fl_str_mv COLIBRI - Universidad de la República
repository_id_str 4771
rights_invalid_str_mv Licencia Creative Commons Atribución (CC - By 4.0)
spelling Aparicio Díaz Hector Gonzalo, Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Biología.Rodao Magela, Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Biología.Badano José L., Instituto Pasteur (Montevideo)Zolessi Flavio R., Universidad de la República (Uruguay). Facultad de Ciencias. Instituto de Biología.2023-07-20T15:37:20Z2023-07-20T15:37:20Z2021Aparicio Díaz, H, Rodao, M, Badano, J [y otro autor]. "Photoreceptor progenitor dynamics in the zebrafish embryo retina and its modulation by primary cilia and N-cadherin". International Journal of Developmental Biology. [en línea] 2021, 65: 439-455. 18 h. DOI: 10.1387/ijdb.200113fz1696-3547https://hdl.handle.net/20.500.12008/3825310.1387/ijdb.200113fzPhotoreceptor cells of the vertebrate neural retina originate in the neuroepithelium, and like other neurons, must undergo cell body translocation and polarity transitions to acquire their final functional morphology, which includes features of neuronal and epithelial cells. We analyzed this process in detail in zebrafish embryos using in vivo confocal microscopy and electron microscopy. Photoreceptor progenitors were labeled by the transgenic expression of enhanced green fluorescent protein under the regulation of the photoreceptor-specific promoter crx, and structures of interest were disrupted using morpholino oligomers to knock-down specific genes. Photoreceptor progenitors detached from the basal retina at pre-mitotic stages, rapidly retracting a short basal process as the cell body translocated apically. They remained at an apical position indefinitely to form the outer nuclear layer (ONL), initially extending and retracting highly dynamic neurite-like processes, tangential to the apical surface. Many photoreceptor progenitors presented a short apical primary cilium. The number and length of these cilia was gradually reduced until nearly disappearing around 60 hpf. Their disruption by knocking-down ift88 and elipsa caused a notorious defect on basal process retraction. To assess the role of cell adhesion in the organization of photoreceptor progenitors, we knocked-down cdh2/N-cadherin and observed the cell behavior by time-lapse microscopy. The ectopic photoreceptor progenitors initially migrated in an apparent random manner, profusely extending cell processes, until they encountered other cells to establish cell rosettes in which they stayed, acquiring photoreceptor-like polarity. Altogether, our observations indicate a complex regulation of photoreceptor progenitor dynamics to form the retinal ONL, previous to the post-mitotic maturation stages.Submitted by Faget Cecilia (lfaget@fcien.edu.uy) on 2023-07-20T15:30:51Z No. of bitstreams: 2 license_rdf: 19875 bytes, checksum: 9fdbed07f52437945402c4e70fa4773e (MD5) 101387ijdb200113fz.pdf: 13732623 bytes, checksum: 4e6d923cfebebc1868a37378ca6a8540 (MD5)Approved for entry into archive by Faget Cecilia (lfaget@fcien.edu.uy) on 2023-07-20T15:31:14Z (GMT) No. of bitstreams: 2 license_rdf: 19875 bytes, checksum: 9fdbed07f52437945402c4e70fa4773e (MD5) 101387ijdb200113fz.pdf: 13732623 bytes, checksum: 4e6d923cfebebc1868a37378ca6a8540 (MD5)Made available in DSpace by Luna Fabiana (fabiana.luna@seciu.edu.uy) on 2023-07-20T15:37:20Z (GMT). No. of bitstreams: 2 license_rdf: 19875 bytes, checksum: 9fdbed07f52437945402c4e70fa4773e (MD5) 101387ijdb200113fz.pdf: 13732623 bytes, checksum: 4e6d923cfebebc1868a37378ca6a8540 (MD5) Previous issue date: 2021ANII: FCE_1_2014_1_498218 happlication/pdfenengUniversidad del País VascoInternational Journal of Developmental Biology, 2021, 65: 439-455Las obras depositadas en el Repositorio se rigen por la Ordenanza de los Derechos de la Propiedad Intelectual de la Universidad de la República.(Res. Nº 91 de C.D.C. de 8/III/1994 – D.O. 7/IV/1994) y por la Ordenanza del Repositorio Abierto de la Universidad de la República (Res. Nº 16 de C.D.C. de 07/10/2014)info:eu-repo/semantics/openAccessLicencia Creative Commons Atribución (CC - By 4.0)NeuroepitheliumCell polarityCell adhesionRetina laminationNeurogenesisPhotoreceptor progenitor dynamics in the zebrafish embryo retina and its modulation by primary cilia and N-cadherinArtículoinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionreponame:COLIBRIinstname:Universidad de la Repúblicainstacron:Universidad de la RepúblicaAparicio Díaz, Hector GonzaloRodao, MagelaBadano, José L.Zolessi, Flavio R.LICENSElicense.txtlicense.txttext/plain; charset=utf-84267http://localhost:8080/xmlui/bitstream/20.500.12008/38253/5/license.txt6429389a7df7277b72b7924fdc7d47a9MD55CC-LICENSElicense_urllicense_urltext/plain; charset=utf-844http://localhost:8080/xmlui/bitstream/20.500.12008/38253/2/license_urla0ebbeafb9d2ec7cbb19d7137ebc392cMD52license_textlicense_texttext/html; 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- Universidad de la Repúblicafalse
spellingShingle Photoreceptor progenitor dynamics in the zebrafish embryo retina and its modulation by primary cilia and N-cadherin
Aparicio Díaz, Hector Gonzalo
Neuroepithelium
Cell polarity
Cell adhesion
Retina lamination
Neurogenesis
status_str publishedVersion
title Photoreceptor progenitor dynamics in the zebrafish embryo retina and its modulation by primary cilia and N-cadherin
title_full Photoreceptor progenitor dynamics in the zebrafish embryo retina and its modulation by primary cilia and N-cadherin
title_fullStr Photoreceptor progenitor dynamics in the zebrafish embryo retina and its modulation by primary cilia and N-cadherin
title_full_unstemmed Photoreceptor progenitor dynamics in the zebrafish embryo retina and its modulation by primary cilia and N-cadherin
title_short Photoreceptor progenitor dynamics in the zebrafish embryo retina and its modulation by primary cilia and N-cadherin
title_sort Photoreceptor progenitor dynamics in the zebrafish embryo retina and its modulation by primary cilia and N-cadherin
topic Neuroepithelium
Cell polarity
Cell adhesion
Retina lamination
Neurogenesis
url https://hdl.handle.net/20.500.12008/38253